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An Experimental Study on Head Loss of Prototypical Fibrous Debris Beds During Loss-of-Coolant Accident Conditions

机译:冷却液流失事故条件下原型纤维碎片床水头损失的实验研究

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摘要

The United States Nuclear Regulatory Commission (NRC) initiated a generic safety issue (GSI-191) assessing debris accumulation and resultant chemical effects on pressurized water reactor (PWR) sump performance. GSI-191 has been investigated using reduced-scale separate-effects testing and integral-effects testing facilities. These experiments focused on developing a procedure to generate prototypical debris beds that provide stable and reproducible conventional head loss (CHL). These beds also have the ability to filter out chemical precipitates resulting in chemical head loss. The newly developed procedure presented in this paper is used to generate debris beds with different particulate to fiber ratios (η). Results from this experimental investigation show that the prepared beds can provide reproducible CHL for different η in a single and multivertical loops facility within ±7% under the same flow conditions. The measured CHL values are consistent with the predicted values using the NUREG-6224 correlation. Also, the results showed that the prepared debris beds following the proposed procedure are capable of detecting standard aluminum and calcium precipitates, and the head loss increase (chemical head loss) was measured and reported in this paper.
机译:美国核监管委员会(NRC)发起了一个通用安全问题(GSI-191),以评估碎屑堆积以及由此产生的化学物质对压水堆(PWR)污水池性能的影响。已使用缩小规模的独立效应测试和整体效应测试工具对GSI-191进行了研究。这些实验着重于开发生成原型碎片床的程序,该程序可提供稳定且可重现的常规头部损失(CHL)。这些床还具有过滤掉化学沉淀物的能力,从而导致化学水头损失。本文介绍的新开发程序可用于生成具有不同颗粒与纤维比率(η)的碎屑床。该实验研究的结果表明,在相同流动条件下,制备的床可以在±7%的单回路和多回路回路设施中为不同的η提供可重现的CHL。使用NUREG-6224相关性,测得的CHL值与预测值一致。此外,结果表明,按照建议的程序制备的碎屑床能够检测标准的铝和钙沉淀物,并且测量并报道了水头损失增加(化学水头损失)。

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